Metal hydroxides (MAH) consisting of magnesium hydroxide and aluminum hydroxide with a mass ratio of 1:2 were surface-modified by y-diethoxyphosphorous ester propyldiethoxymethylsilane, boric acid and diphenylsilan...Metal hydroxides (MAH) consisting of magnesium hydroxide and aluminum hydroxide with a mass ratio of 1:2 were surface-modified by y-diethoxyphosphorous ester propyldiethoxymethylsilane, boric acid and diphenylsilanediol in xylene under dibutyl tin dilaurate catalyst at 140 ℃. Phosphorus, silicon and boron elements covalently bonded to metal hydroxide particles were detected by X-ray photoelectron spectroscopy. The degradation behavior of the surface-modified MAH was characterized by thermogravimetric analysis. The results show that linear low density polyethylene (LLDPE) composite, filled with 50% (mass fraction) of MAH modified by 5.0% (mass fraction) of modifiers, passes the V-0 rating of UL-94 test and shows the limited oxygen index of 34%, and its heat release rate and average effective heat combustion in a cone calorimeter measurement decrease obviously; The mechanical properties of MAH can be improved by surface-modification. The uniform dispersion of particles and strong interfacial bonding between particles and matrix are obtained.展开更多
This paper reports a new kind catalytic system to produce linear low density polyethylene(LLDPE) from ethylene alone in a single reactor by combining the ability of Ti(OBu n ) 4/AlEt 3 to produce 1 butene with the abi...This paper reports a new kind catalytic system to produce linear low density polyethylene(LLDPE) from ethylene alone in a single reactor by combining the ability of Ti(OBu n ) 4/AlEt 3 to produce 1 butene with the ability of [Me 2SiN t BuInd]ZrCl 2/MAO to copolymerize ethylene with 1 butene. It was found that the dual functional catalytic system has high activity and get the good polymer with density ranging from 0.91-0.95 g/cm 3 in ethylene polymerization.展开更多
The oxygen-contained groups such as C—O,C—OH,CO,C(O)O and C(O)OH are introduced onto the molecular chains of linear low density polyethylene(LLDPE) through ultraviolet irradiation at environmental temperature of 70 ...The oxygen-contained groups such as C—O,C—OH,CO,C(O)O and C(O)OH are introduced onto the molecular chains of linear low density polyethylene(LLDPE) through ultraviolet irradiation at environmental temperature of 70 ℃ in air without adding any additives.The concentration of these groups increases with the iucrease of irradiation time.The gel appears in irradiated LLDPE,the gel content increases with the iucrease of irradiation time.The melt flow index decreases and reach minimum when the irradiation time is 24 h,and then increase.The interfacial adhesion between irradiated LLDPE and polyamide 66(PA66) and the mechanical properties of the PA66/irradiated LLDPE(80/20) blends are improved owing to the oxygen-contained polar groups introduced.Compared with those of PA66/LLDPE(80/20) blends,the tensile strength,Young′s modulus,bending strength and notch impact strength of PA66/irradiated LLDPE(80/20) blends for 24 h are increased from 48.3,908,64.8 MPa and 31 J/m\ to 62.0,984,83.1 MPa and 85 J/m,respectively.展开更多
为了降低直流电缆绝缘材料的电导率,并提升电导率及直流击穿场强的温度稳定性,同时改善绝缘的高温力学性能,文中引入低交联度线性低密度聚乙烯(linear low density polyethylene,LLDPE)作为直流电缆绝缘材料。文中对比添加不同含量过氧...为了降低直流电缆绝缘材料的电导率,并提升电导率及直流击穿场强的温度稳定性,同时改善绝缘的高温力学性能,文中引入低交联度线性低密度聚乙烯(linear low density polyethylene,LLDPE)作为直流电缆绝缘材料。文中对比添加不同含量过氧化二异丙苯(dicumyl peroxide,DCP)的LLDPE和低密度聚乙烯(low density polyethylene,LDPE),通过热延伸、动态热机械测试及拉伸试验分析其力学性能,并测试直流电导率和直流击穿场强。结果表明,DCP质量分数为0.7%~2.0%范围内,交联LLDPE具有更低的热延伸率,DCP质量分数为0.7%即可满足高压直流电缆对交联聚乙烯(crosslinked polyethylene,XLPE)热延伸率的要求。由此结果,结合减少副产物的目的,选出DCP质量分数为0.7%的LLDPE作为传统XLPE(DCP质量分数为2.0%的LDPE)的对比及替代绝缘材料。动态热机械测试(dynamic mechanical analysis,DMA)及拉伸试验验证了DCP质量分数为0.7%的LLDPE比传统XLPE拥有更高的杨氏模量及断裂伸长率;电导率及直流击穿实验表明前者在30~90℃拥有更低的电导率及更优的电导率和直流击穿场强的温度稳定性。由于实际电缆中的交联副产物难以脱尽且分布不均,严重影响电缆长期安全运行,可考虑将DCP质量分数为0.7%的低交联度LLDPE用作直流电缆绝缘材料,从而在满足高温机械性能的同时降低直流电导率并增强电导率的温度稳定性。展开更多
以线性低密度聚乙烯(linear low density polyethylene,LLDPE)为基础树脂,采用紫外光交联法制备了交联聚乙烯试样(记为XLPE1),并利用水刀电极法比较了XLPE1与过氧化物交联低密度聚乙烯(记为XLPE2)在抗水树性能的差异。结果表明,...以线性低密度聚乙烯(linear low density polyethylene,LLDPE)为基础树脂,采用紫外光交联法制备了交联聚乙烯试样(记为XLPE1),并利用水刀电极法比较了XLPE1与过氧化物交联低密度聚乙烯(记为XLPE2)在抗水树性能的差异。结果表明,未经过交联反应的LLDPE的水树枝尺寸明显低于低密度聚乙烯(linear low density polyethylene,LDPE),即使两种材料在经过交联反应后抗水树能力均变强,但XLPE1的抗水树性能仍优于XLPE2。拉伸实验过程中出现的应变硬化现象表明,交联键以及LLDPE中密集的短支链均可以增加无定形相的连接分子链密度,延缓了水树的生长。另外,动态热机械分析(dynamic mechanical analysis,DMA)结果表明交联反应使材料无定形相韧性增加,有助于吸收微水珠的冲击力。XLPE1具有相对优异的抑制水树生长能力,这可能与LLDPE抗水树性能略好以及其交联度略高有关。展开更多
基金Project(20574020) supported by the National Natural Science Foundation of ChinaProject(20061001) supported by the Opening Project of the Key Laboratory of Polymer Processing Engineering, Ministry of Education, ChinaProject (20060106-2) supported by Guangdong Key Projects
文摘Metal hydroxides (MAH) consisting of magnesium hydroxide and aluminum hydroxide with a mass ratio of 1:2 were surface-modified by y-diethoxyphosphorous ester propyldiethoxymethylsilane, boric acid and diphenylsilanediol in xylene under dibutyl tin dilaurate catalyst at 140 ℃. Phosphorus, silicon and boron elements covalently bonded to metal hydroxide particles were detected by X-ray photoelectron spectroscopy. The degradation behavior of the surface-modified MAH was characterized by thermogravimetric analysis. The results show that linear low density polyethylene (LLDPE) composite, filled with 50% (mass fraction) of MAH modified by 5.0% (mass fraction) of modifiers, passes the V-0 rating of UL-94 test and shows the limited oxygen index of 34%, and its heat release rate and average effective heat combustion in a cone calorimeter measurement decrease obviously; The mechanical properties of MAH can be improved by surface-modification. The uniform dispersion of particles and strong interfacial bonding between particles and matrix are obtained.
文摘This paper reports a new kind catalytic system to produce linear low density polyethylene(LLDPE) from ethylene alone in a single reactor by combining the ability of Ti(OBu n ) 4/AlEt 3 to produce 1 butene with the ability of [Me 2SiN t BuInd]ZrCl 2/MAO to copolymerize ethylene with 1 butene. It was found that the dual functional catalytic system has high activity and get the good polymer with density ranging from 0.91-0.95 g/cm 3 in ethylene polymerization.
文摘The oxygen-contained groups such as C—O,C—OH,CO,C(O)O and C(O)OH are introduced onto the molecular chains of linear low density polyethylene(LLDPE) through ultraviolet irradiation at environmental temperature of 70 ℃ in air without adding any additives.The concentration of these groups increases with the iucrease of irradiation time.The gel appears in irradiated LLDPE,the gel content increases with the iucrease of irradiation time.The melt flow index decreases and reach minimum when the irradiation time is 24 h,and then increase.The interfacial adhesion between irradiated LLDPE and polyamide 66(PA66) and the mechanical properties of the PA66/irradiated LLDPE(80/20) blends are improved owing to the oxygen-contained polar groups introduced.Compared with those of PA66/LLDPE(80/20) blends,the tensile strength,Young′s modulus,bending strength and notch impact strength of PA66/irradiated LLDPE(80/20) blends for 24 h are increased from 48.3,908,64.8 MPa and 31 J/m\ to 62.0,984,83.1 MPa and 85 J/m,respectively.
文摘为了降低直流电缆绝缘材料的电导率,并提升电导率及直流击穿场强的温度稳定性,同时改善绝缘的高温力学性能,文中引入低交联度线性低密度聚乙烯(linear low density polyethylene,LLDPE)作为直流电缆绝缘材料。文中对比添加不同含量过氧化二异丙苯(dicumyl peroxide,DCP)的LLDPE和低密度聚乙烯(low density polyethylene,LDPE),通过热延伸、动态热机械测试及拉伸试验分析其力学性能,并测试直流电导率和直流击穿场强。结果表明,DCP质量分数为0.7%~2.0%范围内,交联LLDPE具有更低的热延伸率,DCP质量分数为0.7%即可满足高压直流电缆对交联聚乙烯(crosslinked polyethylene,XLPE)热延伸率的要求。由此结果,结合减少副产物的目的,选出DCP质量分数为0.7%的LLDPE作为传统XLPE(DCP质量分数为2.0%的LDPE)的对比及替代绝缘材料。动态热机械测试(dynamic mechanical analysis,DMA)及拉伸试验验证了DCP质量分数为0.7%的LLDPE比传统XLPE拥有更高的杨氏模量及断裂伸长率;电导率及直流击穿实验表明前者在30~90℃拥有更低的电导率及更优的电导率和直流击穿场强的温度稳定性。由于实际电缆中的交联副产物难以脱尽且分布不均,严重影响电缆长期安全运行,可考虑将DCP质量分数为0.7%的低交联度LLDPE用作直流电缆绝缘材料,从而在满足高温机械性能的同时降低直流电导率并增强电导率的温度稳定性。
文摘以线性低密度聚乙烯(linear low density polyethylene,LLDPE)为基础树脂,采用紫外光交联法制备了交联聚乙烯试样(记为XLPE1),并利用水刀电极法比较了XLPE1与过氧化物交联低密度聚乙烯(记为XLPE2)在抗水树性能的差异。结果表明,未经过交联反应的LLDPE的水树枝尺寸明显低于低密度聚乙烯(linear low density polyethylene,LDPE),即使两种材料在经过交联反应后抗水树能力均变强,但XLPE1的抗水树性能仍优于XLPE2。拉伸实验过程中出现的应变硬化现象表明,交联键以及LLDPE中密集的短支链均可以增加无定形相的连接分子链密度,延缓了水树的生长。另外,动态热机械分析(dynamic mechanical analysis,DMA)结果表明交联反应使材料无定形相韧性增加,有助于吸收微水珠的冲击力。XLPE1具有相对优异的抑制水树生长能力,这可能与LLDPE抗水树性能略好以及其交联度略高有关。